
via University of Maryland
Genetic studies revealed mechanisms for mercury remediation and suggest a potential tool for protecting crops from mercury pollution
A University of Maryland researcher and colleagues found that the fungus Metarhizium robertsii removes mercury from the soil around plant roots, and from fresh and saltwater. The researchers also genetically engineered the fungus to amplify its mercury detoxifying effects.
Mercury pollution of soil and water is a worldwide threat to public health. This new work suggests Metarhizium could provide an inexpensive and efficient way to protect crops grown in polluted areas and remediate mercury-laden waterways.
The study, which was conducted by UMD professor of entomology Raymond St. Leger and researchers in the laboratory of his former post-doctoral fellow, Weiguo Fang (now at Zhejiang University in Hangzhou, China),was published in Proceedings of the National Academy of Sciences (PNAS) on November 14, 2022.
“This project, led by Dr. Fang, found that Metarhizium stops plants from taking up mercury,” said St. Leger. “Despite being planted in polluted soil, the plant grows normally and is edible. What’s more, the fungus alone can quickly clear mercury from both fresh and saltwater.”
Metarhizium is a nearly ubiquitous fungi, and previous work by the St. Leger laboratory had shown that it colonizes plant roots and protects them from herbivorous insects. Scientists have known that Metarhizium is often one of the only living things found in soils from toxic sites like mercury mines. But no one had previously determined how the fungus survived in mercury polluted soils, or if that had implications for the plants the fungus normally lives with.
St. Leger and other colleagues had previously sequenced the genome of Metarhizium, and Fang noticed that it contains two genes that are very similar to genes present in a bacterium known to detoxify, or bioremediate, mercury.
For the current study, the researchers ran a variety of laboratory experiments and found that corn infected with Metarhizium grew just as well whether it was planted in clean soil or mercury-laden soil. What’s more, no mercury was found in the plant tissues of corn grown in polluted soil.
The researchers then genetically modified the fungi, removing the two genes that were similar to those in mercury remediating bacteria. When they replicated their experiments, modified Metarhizium no longer protected corn plants from mercury-laden soil, and the corn died.
To verify that the genes were providing the detoxifying qualities, the researchers inserted them into another fungus that does not normally protect corn from mercury. The newly modified fungus performed like the Metarhizium, protecting the plants from mercury-laden soil.
Microbiological analyses revealed that the genes in question expressed enzymes that break down highly toxic organic forms of mercury into less toxic, inorganic mercury molecules. Lastly, the researchers genetically engineered Metarhizium to express more of the detoxifying genes and increase its production of the detoxifying enzymes.
In their final experiment, the researchers found they could clear mercury from both fresh and salt water in 48 hours by mixing in Metarhizium.
The next step will be to conduct experiments in the field in China to see if Metarhizium can turn toxic environments into productive fields for growing corn and other crops. Current methods of remediating polluted soils require toxins to be removed or neutralized from entire fields before anything can be planted. That can be very expensive and take a long time. But Metarhizium simply detoxifies the soil immediately surrounding the plant roots and prevents the plants from taking up the toxin.
“Allowing plants to grow in mercury-rich environments is one of the ways this fungus protects its plant home,” St. Leger explained. “It’s the only microbe we know of with the potential to be used like this, because the bacteria with the same genetic capabilities to detoxify mercury don’t grow on plants. But you can imagine simply dipping seeds in Metarhizium, and planting crops that are now protected from mercury-rich soils.”
In addition to its potential as a cost-effective tool for reclaiming polluted lands for agriculture, Metarhizium may help clear mercury from wetlands and polluted waterways that are increasingly threatened by mercury pollution as climate change and melting permafrost accelerates the release of the toxic metal into soils and oceans.
Original Article: UMD Researcher Shows How A Common Fungus Eliminates Toxic Mercury from Soil and Water
More from: University of Maryland College of Agriculture and Natural Resources | Zhejiang University
The Latest Updates from Bing News
Go deeper with Bing News on:
Mercury pollution
- Understanding the sources and effects of mercury pollution in wastewater systems
By understanding the sources and consequences of mercury pollution, we can all play a role in protecting our water resources.
- How air pollution can checkmate chess players
A study, published in the journal Management Science, has found that with a small rise in air pollution, the probability of chess players making mistakes increased by 2.1 percentage points, and the ...
- Delhi’s air quality in moderate category; mercury expected to rise to 24°C
An AQI between zero and 50 is considered good, 51 and 100 satisfactory, 101 and 200 moderate, 201 and 300 poor, 301 and 400 very poor, and 401 and 500 severe ...
- No need for every toxic chemical to have a pollution plan, Ottawa says
The federal government is playing a dangerous game by refusing to force any company that makes or uses toxic chemicals to have a plan in place to prevent them from getting into the environment, a ...
- Government says there is no need for every toxic chemical to have a pollution plan
He said forcing pollution prevention plans for every substance ... lead, asbestos and mercury. It found companies have done a good job reducing the amount of toxic substances leaking into the ...
Go deeper with Bing News on:
Mercury remediation
- Understanding the sources and effects of mercury pollution in wastewater systems
By understanding the sources and consequences of mercury pollution, we can all play a role in protecting our water resources.
- Former Pottstown Mercury building is put up for sale
“The reason we are selling The Mercury is because the project needs time ... tiles from the building where nearly 100 people had once worked. “We completed the remediation of environmental hazards — ...
- Good Afternoon, News: Cop Hunzeker Off the Hook, City Workers on Strike, and Omar Voted Off Foreign Affairs Committee
The Mercury provides news and fun every single day—but your ... The House GOP did the voting, but it's worth noting that the House Dems set the stage for Omar's removal by painting her as antisemitic ...
- Scientists warn of 'urgency' in cleaning up Detroit River toxic sediment
Some of the mercury and other toxic contaminants that lurk at the bottom of the Detroit River have sat there for up to a century or more, but Great Lakes scientists are sounding the alarm bells now on ...
- Mercury Removal Market : Global Market Growth, New Trends, COVID-19 Impact and Forecast 2023 To 2029
Mercury Removal Market Size is projected to Reach Multimillion USD by 2029, In comparison to 2022, at unexpected ...